首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Brain-derived neurotrophic factor mediates activity-dependent dendritic growth in nonpyramidal neocortical interneurons in developing organotypic cultures.
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Brain-derived neurotrophic factor mediates activity-dependent dendritic growth in nonpyramidal neocortical interneurons in developing organotypic cultures.

机译:在发展型器官培养物中,脑源性神经营养因子介导非金字塔形新皮层中枢神经元的活动依赖性树突生长。

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Brain-derived neurotrophic factor (BDNF) promotes postnatal maturation of GABAergic inhibition in the cerebral and cerebellar cortices, and its expression and release are enhanced by neuronal activity, suggesting that it acts in a feedback manner to maintain a balance between excitation and inhibition during development. BDNF promotes differentiation of cerebellar, hippocampal, and neostriatal inhibitory neurons, but its effects on the dendritic development of neocortical inhibitory interneurons remain unknown. Here, we show that BDNF mediates depolarization-induced dendritic growth and branching in neocortical interneurons. To visualize inhibitory interneurons, we biolistically transfected organotypic cortical slice cultures from neonatal mice with green fluorescent protein (GFP) driven by the glutamic acid decarboxylase (GAD)67 promoter. Nearly all GAD67-GFP-expressing neurons were nonpyramidal, many contained GABA, and some expressed markers of neurochemically defined GABAergic subtypes, indicating that GAD67-GFP-expressing neurons were GABAergic. We traced dendritic trees from confocal images of the same GAD67-GFP-expressing neurons before and after a 5 d growth period, and quantified the change in total dendritic length (TDL) and total dendritic branch points (TDBPs) for each neuron. GAD67-GFP-expressing neurons growing in control medium exhibited a 20% increase in TDL, but in 200 ng/ml BDNF or 10 mm KCl, this increase nearly doubled and was accompanied by a significant increase in TDBPs. Blocking action potentials with TTX did not prevent the BDNF-induced growth, but antibodies against BDNF blocked the growth-promoting effect of KCl. We conclude that BDNF, released by neocortical pyramidal neurons in response to depolarization, enhances dendritic growth and branching in nearby inhibitory interneurons.
机译:脑源性神经营养因子(BDNF)促进脑和小脑皮质中GABA能抑制的出生后成熟,并且神经元活性增强其表达和释放,表明其以反馈方式起作用,以在发育过程中保持兴奋与抑制之间的平衡。 BDNF促进小脑,海马和新纹状体抑制神经元的分化,但其对新皮层抑制神经元的树突发展的影响仍然未知。在这里,我们表明BDNF介导去极化诱导树突状生长和新皮层神经元的分支。为了可视化抑制性中间神经元,我们用谷氨酸脱羧酶(GAD)67启动子驱动的绿色荧光蛋白(GFP)对新生小鼠的器官型皮质切片培养物进行了生物转染。几乎所有表达GAD67-GFP的神经元均为非锥体神经元,许多含有GABA,并且某些表达的神经化学定义的GABAergic亚型的标记物,表明表达GAD67-GFP的神经元是GABA能的。我们从表达相同GAD67-GFP的神经元在5 d生长期之前和之后的共聚焦图像中追踪树突树,并量化每个神经元的总树突长度(TDL)和总树突分支点(TDBPs)的变化。在对照培养基中生长的表达GAD67-GFP的神经元的TDL增加了20%,但是在200 ng / ml BDNF或10 mm KCl中,这种增加几乎翻了一番,并伴随着TDBP的显着增加。用TTX阻断动作电位并不能阻止BDNF诱导的生长,但是针对BDNF的抗体阻断了KCl的促生长作用。我们得出的结论是,新皮层锥体神经元响应去极化而释放的BDNF增强了树突状生长和附近抑制性中间神经元的分支。

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